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      • KCI등재

        Electromagnetic Topology를 이용한 능동소자가 포함된 회로의 동작 특성 해석

        權五旭(Ohwook Kwon),朴允美(Yoon-Mi Park),鄭容植(Young-Seek Chung),千昌律(Changyul Cheon),鄭炫?(Hyun-Kyo Jung) 대한전기학회 2008 전기학회논문지 Vol.57 No.5

        Recently as a progress of electric technology, modem electric systems become more and more complicated. Thus, it is difficult to use a classical method to analyze responses of the systems in complicated electromagnetic environments because there are so many coupling phenomena. The electromagnetic topology (EMT) is a helpful solution to analyze electromagnetic interference / electromagnetic compatibility (EMI/EMC) of the large complex system. In this paper, EMT is applied to analyze an active element. And then to prove the validity of this analysis, a detector circuit including Schottky barrier diode is analyzed by EMT when input power is given directly.

      • KCI등재

        전자기 토폴로지 기법을 위한 임의의 전자기 신호의 시간 영역 응답 도출

        한정훈 한국컴퓨터정보학회 2022 韓國컴퓨터情報學會論文誌 Vol.27 No.2

        Electromagnetic topology (EMT) technique is a method to analyze each component of the electromagnetic propagation environment and combine them in the form of a network in order to effectively model the complex propagation environment. In a typical commercial communication channel model, since the propagation environment is complex and difficult to predict, a probabilistic propagation channel model that utilizes an average solution, although with low accuracy, is used. However, modeling techniques using EMT technique are considered for application of propagation and coupling analysis of threat electromagnetic waves such as electromagnetic pulses, radio wave models used in electronic warfare, local communication channel models used in 5G and 6G communications that require relatively high accuracy electromagnetic wave propagation characteristics. This paper describes the effective implementation method, algorithm, and program implementation of the electromagnetic topology (EMT) method analyzed in the frequency domain. Also, a method of deriving a response in the time domain to an arbitrary applied signal source with respect to the EMT analysis result in the frequency domain will be discussed. 전자기 토폴로지 기법은 복합적인 전파 환경의 모델링을 효과적으로 수행하기 위하여, 구성되는전파 환경 단위를 각각 해석하고 네트워크의 형태로 결합하여 재해석하는 방법이다. 일반적인 상용통신 채널 모델에서는 전파 환경이 복합적이고 예측이 어렵기 때문에 정확도는 낮지만 평균적인 해를 활용하는 확률 모델을 활용한다. 하지만, 상대적으로 높은 정확도의 전자파 전파 특성을 요구하는 전자기 펄스 등 위협 전자파의 전파 및 결합 분석, 전자전, 5G 및 6G 이상의 로컬 통신 채널 모델등에 사용되는 전파 모델 응용에서는 전자기 토폴로지 기법을 활용한 전파 모델링 기법 등이 활용된다. 본 논문은 주파수 영역에서 해석되는 전자기 토폴로지(EMT) 기법의 효과적인 수행 방안과 알고리즘, 그리고 프로그램 구현에 대하여 설명한다. 또한 주파수 영역의 EMT 해석 결과에 대하여 임의의 인가 신호원에 대한 시간 영역에서의 응답을 도출하는 방안에 대하여 논의한다.

      • KCI등재

        Prediction of Radio-Wave Propagation in a Shield Room: Measurement, Simulation, and Theoretical Method

        Han-Hee Lee,Jae Wook Lee,Jong Hwa Kwon,Jong-Hwan Hwang,Chang-Hee Hyoung 한국전자파학회JEES 2020 Journal of Electromagnetic Engineering and Science Vol.20 No.1

        In this paper, electromagnetic wave analysis was performed efficiently in a large structure using the theoretical method. While taking into consideration the important assumptions of the employed theoretical method, we created an environment for measurement and simulation. A shield room with an aperture was selected as the target structure, and a measurement system based on frequency domain was constructed and used. Using the simulation tool, Wireless Insite, electromagnetic wave analysis was performed by modeling the measurement environment. To verify the efficiency and accuracy of the theoretical method, the results of the actual measurement, the commercially available simulation tool, and the theoretical method were compared. These results showed that the theoretical method can be more efficiently interpreted than the commercially available simulation tool in an electrically large structure.

      • KCI등재

        Estimation of Electromagnetic Field Penetration into Concrete Buildings Using a Theoretical Approach Considering External Environmental Factors

        이한희,임정환,이재욱,권종화,황정환,형창희,박현호 한국전자파학회 2023 Journal of Electromagnetic Engineering and Science Vol.23 No.3

        In this paper, we propose a theoretical approach to estimate the power level of electromagnetic waves radiated into a structure by a specific external source. The target structure is a multistory building on a university campus that is used primarily for academic purposes and is much larger than the target wavelength. To verify the accuracy and efficiency of the proposed theoretical approach, measurements were carried out and a commercially available simulation tool, Wireless Insite, was adopted. We then analyzed the influence of an area of vegetation as an external environmental factor that could affect the radiated electromagnetic waves because of its location in front of the target structure. For this, a precise simulation environment was designed to derive the quantitative values of the electromagnetic attenuation caused by the external environmental factor. Furthermore, those values were applied to the theoretical approach. The results of the theoretical approach accounting for the external environmental factor were similar to those of the actual measured results. The results were also similar to those of the simulation tool, Wireless Insite, but the theoretical approach provided more efficient analysis results in terms of time consumption and computer resources.

      • KCI등재

        BLT 방정식을 이용한 RF 검파 회로 해석

        黃世薰(Sehoon Hwang),朴允美(Yoon-Mi Park),鄭炫敎(Hyun-Kyo Jung) 대한전기학회 2007 전기학회논문지 Vol.56 No.9

        Recently, there is a need for research concerning the technologies and precaution methods against electronic bomb assaults. There lays perplex constitution and much coupling phenomenon in this type of system, and thus requires much time and memory in order to translate the system with the existing translation methods. Applying the EMT (Electromagnetic Topology) would prove much more efficient. In this paper, EMT has been applied to the circuit-like micro system, previously employed in micro systems. Also, each section has been interpreted using the BLT (Baum, Liu, Tesche) equation using the EMT, then reconstructed, consequentially interpreting an entire system. In this paper, a simple circuit containing active and passive elements based on a CPW has been interpreted employing the BLT equation, and has been proven by experiment using the circuit simulation, a simulation officially recognized for its accuracy in interpreting small structures. The interpretation results have been presented by an S-parameter, and by comparing the interpretation results attained through the BLT equation and that from common simulation to that from experimentation. that the BLT equation turned out to be the most reliable interpretation method could be found.

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